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Intelligent ECM mimetic injectable scaffolds based on functional collagen building blocks for tissue engineering and biomedical applications

机译:基于功能性胶原蛋白构建基的智能ECM模拟可注射支架,用于组织工程和生物医学应用

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摘要

Hydrogels comprising natural extracellular matrix (ECM) components are very attractive as scaffolds for regenerative medicine applications due to their inherent biointeractive properties. Responsive materials that adapt to their surrounding environments and regulate transport of ions and bioactive molecules manifest significant advantages for biomedical applications. Although there are many exciting challenges, the opportunity to design, fabricate and engineer stimuli-responsive polymeric systems based on ECM components is particularly attractive for regenerative medicine. Here we describe a one-pot approach to fabricate in situ fast gellable intelligent ECM mimetic scaffolds, based on methacrylated collagen building blocks with mechanical properties that can be modulated in the kPa-MPa range and that are suitable for both soft and hard tissues. Physiochemical characterizations demonstrate their temperature and pH responsiveness, together with the structural and enzymatic resistance that make them suitable scaffolds for long-term use in regenerative medicine and biomedical applications. The multifunctionality of these hydrogels has been demonstrated as an in situ depot-forming delivery platform for the adjustable controlled release of proteins and small drug molecules under physiological conditions and as a structural support for adhesion, proliferation and metabolic activities of human cells. The results presented herein should be useful to the design and fabrication of tailor-made scaffolds with tunable properties that retain and exhibit sustained release of growth factors for promoting tissue regeneration.
机译:包含天然细胞外基质(ECM)成分的水凝胶由于其固有的生物相互作用特性,非常适合作为再生医学应用的支架。适应周围环境并调节离子和生物活性分子运输的响应性材料在生物医学应用中显示出显着优势。尽管存在许多激动人心的挑战,但基于再生医学的设计,制造和工程化基于ECM成分的刺激响应性聚合物系统的机会特别有吸引力。在这里,我们描述了一种基于一锅法的原位快速胶凝智能ECM模拟支架,该支架基​​于具有可在kPa-MPa范围内调节且适用于软组织和硬组织的机械性能的甲基丙烯酸酯化胶原蛋白构建基块。物化特性表明其对温度和pH的响应能力,以及结构和酶抗性,使其成为适合长期用于再生医学和生物医学应用的支架。这些水凝胶的多功能性已被证明是在生理条件下可调节释放的蛋白质和小分子药物的原位形成贮库的递送平台,并为人类细胞的粘附,增殖和代谢活动提供了结构支持。本文介绍的结果对于设计和制造具有可调节特性的特制支架应是有用的,该可调节特性保留并显示出生长因子的持续释放以促进组织再生。

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